Silica gel mold

By introducing a heating box and heating plate into the silicone mold, and using a fan to deliver high-temperature gas for heat preservation, the problems of mold deformation and insufficient heat preservation are solved, and the flexibility and stability of the equipment are improved.

CN224158697UActive Publication Date: 2026-04-24ZHONGSHAN GRAND ORIENT WAX ART CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
ZHONGSHAN GRAND ORIENT WAX ART CO LTD
Filing Date
2025-05-06
Publication Date
2026-04-24

AI Technical Summary

Technical Problem

Existing silicone molds are prone to deformation after prolonged use and cannot effectively retain internal heat, affecting normal use.

Method used

A silicone mold structure was designed, including a processing platform, a heating box, a heating plate, a fan, and a heating delivery pipeline. The heating plate generates high-temperature gas, which is delivered to the mold cover by the fan for heat preservation. The flexibility and stability of the equipment are improved by positioning pins and supporting guide rails.

Benefits of technology

This technology effectively insulates the silicone mold, improves the flexibility and stability of the equipment, and ensures the normal replenishment of silicone molding liquid and the continuity of the processing.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides a silica gel mold and relates to the technical field of mold equipment. Comprising a machining platform, two fixing frames are installed at the top of the machining platform and symmetrically distributed, the machining platform, a positioning bottom plate, a heat supply box and the fixing frames are arranged, and electric heating wires operate, so that the effect of reinforcing and installing a fan installation frame and the heat supply box is achieved, and the flexibility of equipment in the using process is improved; the damping bottom plate and the machining platform are positioned and mounted through second positioning bolts, so that the mold cover and the machining platform are reinforced and mounted, one end of the heat supply conveying pipeline extends into the mold cover, and the heat supply conveying pipeline is used for conveying generated high-temperature gas and is matched with the interior of the mold cover for heat preservation treatment; and through the design of the bottom discharging barrel, silica gel forming liquid can be conveniently supplemented into the mold cover, high-temperature gas is generated through operation of an electric heating wire in the heat supply box, follow-up heat preservation operation is carried out in cooperation with the interior of the mold cover, and the use flexibility of the whole equipment is improved.
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Description

Technical Field

[0001] This utility model relates to the field of mold equipment technology, and in particular to a silicone mold. Background Technology

[0002] Molds are various shapes and tools used in industrial production to obtain desired products through methods such as injection molding, blow molding, extrusion, die casting, forging, smelting, and stamping. In short, a mold is a tool used to create shaped objects. This tool is composed of various parts, and different molds are composed of different parts. It mainly achieves the shaping of objects by changing the physical state of the material being molded. Silicone molds are one type of mold among many.

[0003] In practice, existing silicone molds can deform after prolonged use, requiring high-temperature internal insulation. However, this process cannot guarantee the replenishment of the solution needed during mold processing, causing numerous inconveniences and affecting normal use.

[0004] Therefore, this utility model provides a silicone mold. Utility Model Content

[0005] The purpose of this invention is to overcome the shortcomings of existing technologies and provide a silicone mold.

[0006] To achieve the above objectives, the present invention adopts the following technical solution: a silicone mold, including a processing platform, two fixed frames are installed on the top of the processing platform, the two fixed frames are symmetrically distributed, a fixed top plate is fixedly connected to the top of the two fixed frames, a bottom discharge cylinder is installed at the bottom of the fixed top plate, a second valve is fixedly connected to the outside of the bottom discharge cylinder, the second valve is used to control the opening and closing of the bottom discharge cylinder, and the bottom discharge cylinder is used to discharge material into the fixed frame;

[0007] A mold cover is installed on the top of the processing platform. The mold cover is located at the bottom of the fixed top plate. The mold cover has equidistantly distributed mold slots inside. Each mold slot is equipped with a sealing cover to seal the entire mold cover.

[0008] A heating box is installed on the top of the processing platform, located on one side of the mold cover. A fan mounting bracket is installed inside the heating box, and a drive motor is installed inside the fan mounting bracket. A fan is fixedly connected to the output end of the drive motor. Heating plates are evenly distributed on one side of the drive motor. Each heating plate is equipped with a heating wire. The heating wire rotates, and the evenly distributed heating plates provide heat treatment. The fan is a bidirectional fan, which can transport the high-temperature gas generated by the heating plates into the heat supply pipeline, and then into the mold cover for heat preservation, so as to better facilitate the next step.

[0009] In a preferred embodiment, the fan mounting bracket is fitted with equidistantly distributed reinforcing plates on its outer side. Each reinforcing plate has a positioning block on one side, and the positioning block is internally threaded with a first positioning pin. The positioning pins engage to reinforce the positioning blocks and auxiliary positioning side plates, thus allowing for a single installation of the entire fan mounting bracket into the heating box. An auxiliary positioning side plate is installed inside the heating box, located on one side of the fan mounting bracket. A moisture-proof isolation plate is installed inside the heating box, located at the bottom of the fan mounting bracket. The moisture-proof isolation plate provides overall support for the fan mounting bracket, and the auxiliary positioning side plate engages with multiple first positioning pins, thereby achieving a reinforced installation of the fan mounting bracket and heating box and improving the flexibility of equipment use.

[0010] The technical effect of adopting the above-mentioned further solution is that the positioning block and the auxiliary positioning side plate are reinforced and installed by the first positioning pin, thereby installing the fan mounting bracket as a whole into the interior of the heating box in one go.

[0011] In a preferred embodiment, a mounting base is installed on the top of the fixed top plate, a rotating plate is fitted around the outside of the mounting base, a positioning shaft extending into the mounting base is installed inside the rotating plate, a rotating frame is fitted between the positioning shaft and the rotating plate, a lever is installed on one side of the rotating frame, a shock-absorbing base plate is fixedly connected to the bottom of the mold cover, and a second positioning pin symmetrically distributed and extending into the processing platform is threaded inside the shock-absorbing base plate. The shock-absorbing base plate and the processing platform are positioned and installed by the second positioning pins, thereby reinforcing the mold cover and the processing platform. A heat supply pipeline is installed on one side of the heating box, a first valve is fixedly connected to the outside of the heat supply pipeline, and one end of the heat supply pipeline extends into the mold cover. The opening and closing of the heat supply pipeline is controlled by the first valve. The heat supply pipeline is used to transport the generated high-temperature gas and to provide insulation for the inside of the mold cover.

[0012] The technical effect of adopting the above-mentioned further solution is that the opening and closing of the heat supply pipeline is controlled by the first valve, and the heat supply pipeline is used to transport the generated high-temperature gas, which is used in conjunction with the heat preservation treatment inside the mold cover.

[0013] In a preferred embodiment, a positioning base plate is installed at the bottom of the processing platform, and two connecting base plates are installed between the processing platform and the positioning base plate. The two connecting base plates are symmetrically distributed, and the bottom of each connecting base plate is connected to the positioning base plate. Supporting guide rails are installed on the top of each connecting base plate, and the top of each supporting guide rail is connected to the bottom of the processing platform. By setting supporting guide rails and connecting base plates at the bottom of the processing platform, the horizontal installation position of the processing platform can be finely adjusted when used, improving the flexibility of the equipment during use.

[0014] The technical effect of adopting the above-mentioned further solution is that by setting a support guide rail and a connecting base plate at the bottom of the processing platform, the horizontal installation position of the processing platform can be finely adjusted when used, which improves the flexibility of the equipment during use.

[0015] In a preferred embodiment, a control panel is fixedly connected to the outside of the heating box. The first valve, the second valve, the drive motor, and the heating plate are all electrically connected to the control panel. The control panel is used to control the operation of the first valve, the second valve, the drive motor, and the heating plate, thereby realizing unified management of the electrical equipment.

[0016] The technical effect of adopting the above-mentioned further solution is that the control panel is used to control the operation of the first valve, the second valve, the drive motor and the heating plate, realizing unified management of electrical equipment.

[0017] Compared with the prior art, the advantages and positive effects of this utility model are as follows:

[0018] By setting up a processing platform, positioning base plate, heating box, and fixing frame, each heating plate is equipped with heating wires. The heating wires rotate, and the evenly distributed heating plates provide heating. A bidirectional fan transports the high-temperature gas generated by the heating plates to the heating pipeline, and then to the mold cover for insulation, facilitating the next stage. The first positioning pin reinforces the positioning block and auxiliary positioning side plate, thus installing the fan mounting frame into the heating box in one go. A moisture-proof isolation plate supports the entire fan mounting frame, and the auxiliary positioning side plate is used to cooperate with multiple first positioning pins, achieving a reinforced installation of the fan mounting frame and heating box, improving the flexibility of equipment use. A second positioning pin... The shock-absorbing base plate and processing platform are positioned and installed to reinforce the mold cover and processing platform. One end of the heating supply pipeline extends into the mold cover, and the opening and closing of the heating supply pipeline is controlled by the first valve. The heating supply pipeline is used to transport the generated high-temperature gas, which is used in conjunction with the insulation treatment inside the mold cover. By setting support rails and connecting base plates at the bottom of the processing platform, the horizontal installation position of the processing platform can be finely adjusted during use, improving the flexibility of equipment use. The bottom discharge cylinder design facilitates the replenishment of silicone molding liquid into the mold cover. The mold cover provides the location for silicone mold production. The electric heating wire inside the heating box operates to generate high-temperature gas, which is used in conjunction with the subsequent insulation operation inside the mold cover, improving the overall flexibility of equipment use. Attached Figure Description

[0019] Figure 1 A schematic diagram of the overall structure of a silicone mold provided by this utility model. Figure 1 ;

[0020] Figure 2 A schematic diagram of the overall structure of a silicone mold provided by this utility model. Figure 2 ;

[0021] Figure 3 A schematic diagram of the overall structure of a silicone mold provided by this utility model. Figure 3 ;

[0022] Figure 4 A schematic diagram of the internal structure of a heating box for a silicone mold provided by this utility model;

[0023] Figure 5 A schematic diagram of the internal structure of a fan mounting bracket for a silicone mold provided by this utility model.

[0024] Legend:

[0025] 1. Processing platform;

[0026] 2. Positioning base plate; 21. Supporting guide rail; 22. Connecting base plate;

[0027] 3. Heating box; 31. Control panel; 32. Heating delivery pipeline; 33. First valve; 34. Auxiliary positioning side plate; 35. Moisture-proof isolation plate;

[0028] 4. Fixed frame; 41. Fixed top plate; 42. Mounting base; 43. Rotating plate; 44. Rotating frame; 45. Positioning shaft; 46. Actuating rod; 47. Bottom feed cylinder; 48. Second valve;

[0029] 5. Fan mounting bracket; 51. Drive motor; 52. Fan; 53. Reinforcing plate; 54. Heating plate; 55. Positioning block; 56. First positioning pin;

[0030] 6. Mold cover; 61. Mold groove; 62. Sealing cover; 63. Shock-absorbing base plate; 64. Second positioning pin.

[0031] Detailed implementation method: Install top plate

[0032] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.

[0033] like Figures 1-5As shown, this embodiment provides a technical solution: a silicone mold, including a processing platform 1, two fixed frames 4 are installed on the top of the processing platform 1, the two fixed frames 4 are symmetrically distributed, a fixed top plate 41 is fixedly connected to the top of the two fixed frames 4, a bottom discharge cylinder 47 is installed at the bottom of the fixed top plate 41, a second valve 48 is fixedly connected to the outside of the bottom discharge cylinder 47, the second valve 48 is used to control the opening and closing of the bottom discharge cylinder 47, the bottom discharge cylinder 47 is used to discharge material into the fixed frame 4; a mold cover 6 is installed on the top of the processing platform 1, the mold cover 6 is located at the bottom of the fixed top plate 41, the mold cover 6 has equidistantly distributed mold grooves 61 inside, and a sealing cover 62 is installed inside each mold groove 61, the mold cover 6 is sealed as a whole by the sealing cover 62;

[0034] In this solution, a heating box 3 is installed on the top of the processing platform 1. The heating box 3 is located on one side of the mold cover 6. A fan mounting bracket 5 is installed inside the heating box 3. A drive motor 51 is installed inside the fan mounting bracket 5. A fan 52 is fixedly connected to the output end of the drive motor 51. Heating plates 54 are evenly distributed on one side of the drive motor 51. Each heating plate 54 is equipped with a heating wire. The heating plate 54 heats the material through the rotation of the heating wire. The fan 52 is a bidirectional fan that can transport the high-temperature gas generated by the heating plate 54 to the heating delivery pipe 32, and then to the mold cover 6 for heat preservation, so as to better carry out the next step.

[0035] Going a step further, such as Figures 4-5 As shown: In this scheme: Reinforcing plates 53 are installed on the outer side of the fan mounting bracket 5 at equal intervals. Positioning blocks 55 are installed on one side of each reinforcing plate 53. The internal threads of the positioning blocks 55 are connected to the first positioning pins 56. The positioning blocks 55 and the auxiliary positioning side plates 34 are reinforced and installed by the cooperation of the first positioning pins 56, thereby installing the entire fan mounting bracket 5 into the interior of the heating box 3 in one go.

[0036] In this scheme, an auxiliary positioning side plate 34 is installed inside the heating box 3 and on one side of the fan mounting bracket 5, and a moisture-proof isolation plate 35 is installed inside the heating box 3 and at the bottom of the fan mounting bracket 5. The moisture-proof isolation plate 35 is used to support the fan mounting bracket 5 as a whole, and the auxiliary positioning side plate 34 is used to cooperate with multiple first positioning pins 56 for installation, thereby achieving the effect of reinforcing the installation of the fan mounting bracket 5 and the heating box 3 and improving the flexibility of equipment use.

[0037] Going a step further, such as Figures 1-3As shown: In this scheme, a mounting base 42 is installed on the top of the fixed top plate 41. A rotating plate 43 is sleeved on the outside of the mounting base 42. A positioning shaft 45 extending into the inside of the mounting base 42 is installed inside the rotating plate 43. A rotating frame 44 is sleeved between the positioning shaft 45 and the rotating plate 43. A toggle lever 46 is installed on one side of the rotating frame 44.

[0038] Going a step further, such as Figures 1-5 As shown, in this scheme, a shock-absorbing base plate 63 is fixedly connected to the bottom of the mold cover 6. The internal threads of the shock-absorbing base plate 63 are connected to symmetrically distributed second positioning pins 64 that extend into the processing platform 1. The shock-absorbing base plate 63 and the processing platform 1 are positioned and installed by the second positioning pins 64, thereby reinforcing the mold cover 6 and the processing platform 1. A heat supply pipeline 32 is installed on one side of the heating box 3. A first valve 33 is fixedly connected to the outside of the heat supply pipeline 32. One end of the heat supply pipeline 32 extends into the mold cover 6. The opening and closing of the heat supply pipeline 32 is controlled by the first valve 33. The heat supply pipeline 32 is used to transport the generated high-temperature gas and cooperate with the mold cover 6 for heat preservation.

[0039] In this scheme, a control panel 31 is fixedly connected to the outside of the heating box 3. The first valve 33, the second valve 48, the drive motor 51 and the heating plate 54 are all electrically connected to the control panel 31. The control panel 31 is used to control the operation of the first valve 33, the second valve 48, the drive motor 51 and the heating plate 54, realizing unified management of electrical equipment.

[0040] Going a step further, such as Figures 1-3 As shown in the diagram, in this scheme, a positioning base plate 2 is installed at the bottom of the processing platform 1. Two connecting base plates 22 are installed between the processing platform 1 and the positioning base plate 2. The two connecting base plates 22 are symmetrically distributed, and the bottom of each connecting base plate 22 is connected to the positioning base plate 2. Supporting guide rails 21 are installed on the top of each connecting base plate 22, and the top of each supporting guide rail 21 is connected to the bottom of the processing platform 1. By setting the supporting guide rails 21 and connecting base plates 22 at the bottom of the processing platform 1, the horizontal installation position of the processing platform 1 can be finely adjusted when used together, which improves the flexibility of the equipment during use.

[0041] Working principle:

[0042] like Figures 1-5 As shown:

[0043] By setting up a processing platform 1, a positioning base plate 2, a heating box 3, and a fixing frame 4, the mold cover 6 is sealed as a whole by the sealing cover 62 during use, and the second valve 48 is used to control the opening of the bottom discharge cylinder 47.

[0044] The lever 46 is used to facilitate the portable gripping of the entire device for movement.

[0045] Each heating plate 54 is equipped with a heating wire. The heating plate 54, which is evenly distributed, heats the gas through the rotation of the heating wire. The fan 52 is a bidirectional fan that can transport the high-temperature gas generated by the heating plate 54 to the heat supply pipeline 32, and then to the mold cover 6 for heat preservation, so as to better carry out the next step.

[0046] The fan mounting bracket 5 is installed in one go by using the first positioning pin 56 to reinforce the positioning block 55 and the auxiliary positioning side plate 34. The moisture-proof isolation plate 35 is used to support the fan mounting bracket 5 as a whole, and the auxiliary positioning side plate 34 is used to cooperate with the multiple first positioning pins 56 for installation, thereby achieving the effect of reinforcing the fan mounting bracket 5 and the heating box 3 and improving the flexibility of equipment use.

[0047] The shock-absorbing base plate 63 and the processing platform 1 are positioned and installed by the second positioning pin 64, thereby reinforcing the mold cover 6 and the processing platform 1. One end of the heat supply pipeline 32 extends into the interior of the mold cover 6.

[0048] The first valve 33 controls the opening of the heat supply pipeline 32, which is used to transport the generated high-temperature gas and work in conjunction with the interior of the mold cover 6 for heat preservation.

[0049] The control panel 31 is used to control the operation of the first valve 33, the second valve 48, the drive motor 51, and the heating plate 54, realizing unified management of electrical equipment.

[0050] By setting a support guide rail 21 and a connecting base plate 22 at the bottom of the processing platform 1, the horizontal installation position of the processing platform 1 can be finely adjusted when used together, which improves the flexibility of the equipment during use. The design of the bottom feeding cylinder 47 makes it convenient to add silicone molding liquid into the mold cover 6. It can be added into the mold cover 6 in advance, and then the molding raw material is placed until the final heating and heat preservation treatment.

[0051] The mold cover 6 has multiple mold slots 61 inside, which better facilitates the sculpting of the wax figure's face.

[0052] The silicone mold production process is provided by the mold cover 6. The heating wire inside the heating box 3 generates high-temperature gas, which is then used for subsequent heat preservation operations inside the mold cover 6, thus improving the overall flexibility of the equipment.

[0053] The above description is merely a preferred embodiment of the present utility model and is not intended to limit the present utility model in any other way. Any person skilled in the art may make changes or modifications to the above-disclosed technical content to create equivalent embodiments for application in other fields. However, any simple modifications, equivalent changes, and modifications made to the above embodiments based on the technical essence of the present utility model without departing from the technical solution of the present utility model shall still fall within the protection scope of the technical solution of the present utility model.

Claims

1. A silicone mold, comprising a processing platform (1), characterized in that, The processing platform (1) has two fixed frames (4) installed on its top. The top of the two fixed frames (4) is fixedly connected to a fixed top plate (41). The bottom of the fixed top plate (41) is installed with a bottom discharge cylinder (47). The outside of the bottom discharge cylinder (47) is fixedly connected to a second valve (48). The second valve (48) is used to control the opening and closing of the bottom discharge cylinder (47). The processing platform (1) is equipped with a mold cover (6) on top. The mold cover (6) is located at the bottom of the fixed top plate (41). The mold cover (6) has equidistantly distributed mold slots (61) inside. Each mold slot (61) is equipped with a sealing cover (62). A heating box (3) is installed on the top of the processing platform (1). The heating box (3) is located on one side of the mold cover (6). A fan mounting bracket (5) is installed inside the heating box (3). A drive motor (51) is installed inside the fan mounting bracket (5). A fan (52) is fixedly connected to the output end of the drive motor (51). Heating plates (54) are evenly distributed on one side of the drive motor (51).

2. The silicone mold according to claim 1, characterized in that: The fan mounting bracket (5) is equipped with equidistant reinforcing plates (53) on its outer side. Each reinforcing plate (53) has a positioning block (55) on one side. The positioning block (55) is internally threaded with a first positioning pin (56).

3. The silicone mold according to claim 1, characterized in that: An auxiliary positioning side plate (34) is installed inside the heating box (3) and on one side of the fan mounting bracket (5), and a moisture-proof isolation plate (35) is installed inside the heating box (3) and at the bottom of the fan mounting bracket (5).

4. The silicone mold according to claim 3, characterized in that: A mounting base (42) is installed on the top of the fixed top plate (41). A rotating plate (43) is fitted on the outside of the mounting base (42). A positioning shaft (45) extending into the mounting base (42) is installed inside the rotating plate (43). A rotating frame (44) is fitted between the positioning shaft (45) and the rotating plate (43). A toggle rod (46) is installed on one side of the rotating frame (44).

5. The silicone mold according to claim 2, characterized in that: The bottom of the mold cover (6) is fixedly connected to a shock-absorbing base plate (63). The shock-absorbing base plate (63) is internally threaded with symmetrically distributed second positioning pins (64) that extend into the processing platform (1). A heating conveying pipe (32) is installed on one side of the heating box (3). A first valve (33) is fixedly connected to the outside of the heating conveying pipe (32). One end of the heating conveying pipe (32) extends into the mold cover (6).

6. The silicone mold according to claim 1, characterized in that: The bottom of the processing platform (1) is equipped with a positioning base plate (2), and two connecting base plates (22) are installed between the processing platform (1) and the positioning base plate (2). The bottom of the two connecting base plates (22) is connected to the positioning base plate (2), and the top of the two connecting base plates (22) is equipped with a support guide rail (21).

7. The silicone mold according to claim 5, characterized in that: A control panel (31) is fixedly connected to the outside of the heating box (3). The first valve (33), the second valve (48), the drive motor (51) and the heating plate (54) are all electrically connected to the control panel (31).